In the past studies, electrostatic layer-by-layer (LbL) adsorption of oppositely charged polyelectrolytes has proven to be a promising method for the preparation of polyelectrolyte multilayer membranes (PEMMs). Till now, this method was mainly used to assemble flat sheet and tubular membranes. Since hollow fiber membrane has some advantages such as high-packing density, self-contained mechanical support and hence the consequent economical superiority, this study therefore seeked to assemble inner skin hollow fiber PEMMs by using a dynamic LbL adsorption technique. The assembly process was successfully accomplished by alternatively dynamically filtrating polyacrylic acid (PAA) and polyethyleneimine (PEI) on a hydrolyzed hollow fiber polyacrylonitrile(PAN) membrane under a negative pressure condition. In the case of pervaporation separation of 95 wt.% ethanol-water mixture (50 C), the membrane obtained with only 4.5 and 6.5 bilayers had separation factor of 245 and 1338 while the permeate fluxes were 290 and 120 g/(m(2) h), respectively. The pervaporation separation behavior of various alcohol/water mixtures with the alcohols being t-butanol, 2-propanol and ethanol were also investigated. Finally, scanning electron microscopy and atomic force microscopy clearly confirms a uniform and defect-free layer formed on the inner surface of hollow fiber support. Since different polyelectrolyte pairs could be used to assemble PEMMs for different uses, it was expected that the dynamic negative pressure LbL adsorption technique could also potentially be used to prepare many types of PEMMs in other fields. (c) 2008 Elsevier B.V. All rights reserved.
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机译:在过去的研究中,对带相反电荷的聚电解质的静电逐层(LbL)吸附已被证明是制备聚电解质多层膜(PEMM)的一种有前途的方法。到目前为止,该方法主要用于组装平板和管状膜。由于中空纤维膜具有一些优点,例如高堆积密度,自包含的机械支撑以及因此带来的经济优势,因此,本研究寻求通过使用动态LbL吸附技术组装内皮中空纤维PEMM。通过在负压条件下在水解的中空纤维聚丙烯腈(PAN)膜上动态动态过滤聚丙烯酸酯(PAA)和聚乙烯亚胺(PEI),成功完成了组装过程。在全蒸发分离95 wt。%乙醇-水混合物(50°C)的情况下,仅以4.5和6.5双层获得的膜的分离系数为245和1338,而渗透通量为290和120 g /(m(2 )h)。还研究了各种醇/水混合物的渗透蒸发分离行为,其中醇为叔丁醇,2-丙醇和乙醇。最后,扫描电子显微镜和原子力显微镜清楚地证实了在中空纤维载体的内表面上形成的均匀且无缺陷的层。由于可以使用不同的聚电解质对来组装用于不同用途的PEMM,因此可以预料,动态负压LbL吸附技术也可以潜在地用于制备其他领域的许多类型的PEMM。 (c)2008 Elsevier B.V.保留所有权利。
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